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基于鱼肝脏脱细胞细胞外基质的微流控3D打印水凝胶用于肝脏再生

Microfluidic 3D printing hydrogels based on fish liver decellularized extracellular matrix for liver regeneration.

作者信息

Ren Haozhen, Huang Danqing, Qiu Mengdi, Xue Lingling, Zhu Shaoshi, Gan Jingjing, Chen Cheng, Chen Dayu, Wang Jinglin

机构信息

Division of Hepatobiliary and Transplantation Surgery Department of General Surgery Nanjing Drum Tower Hospital The Affiliated Hospital of Nanjing University Medical School Nanjing China.

College of Medicine University of Illinois Chicago Illinois USA.

出版信息

Smart Med. 2024 Dec 22;3(4):e20240056. doi: 10.1002/SMMD.20240056. eCollection 2024 Dec.

Abstract

Liver tissue engineering offers potential in liver transplantation, while the development of hydrogels for scalable scaffolds incorporating natural components and effective functionalities is ongoing. Here, we propose a novel microfluidic 3D printing hydrogel derived from decellularized fish liver extracellular matrix for liver regeneration. By decellularizing fish liver and combining it with gelatin methacryloyl, the hydrogel scaffold retains essential endogenous growth factors such as collagen and glycosaminoglycans. Additionally, microfluidic-assisted 3D printing technology enables precise modulation of the composition and architecture of hydrogels to fulfill clinical requirements. Benefiting from the natural source of materials, the hydrogels exhibit excellent biocompatibility and cellular proliferation capacity for incorporating induced pluripotent stem cell-derived hepatocytes (iPSC-heps). Furthermore, the macroscopic architecture and biomechanical environment of hydrogels foster optimal functional expression of iPSC-heps. Importantly, post-transplantation, the hydrogels significantly enhance survival rates and liver function in mice with acute liver failure, promoting liver regeneration and repair. These findings suggest that microfluidic 3D printed hydrogels represent promising candidates for liver transplantation and functional recovery.

摘要

肝组织工程在肝移植方面具有潜力,同时,用于制备包含天然成分和有效功能的可扩展支架的水凝胶的研发工作正在进行中。在此,我们提出一种源自脱细胞鱼肝脏细胞外基质的新型微流控3D打印水凝胶,用于肝脏再生。通过对鱼肝脏进行脱细胞处理并将其与甲基丙烯酰化明胶相结合,该水凝胶支架保留了诸如胶原蛋白和糖胺聚糖等重要的内源性生长因子。此外,微流控辅助3D打印技术能够精确调节水凝胶的组成和结构,以满足临床需求。受益于材料的天然来源,这些水凝胶在整合诱导多能干细胞衍生的肝细胞(iPSC-heps)方面表现出优异的生物相容性和细胞增殖能力。此外,水凝胶的宏观结构和生物力学环境促进了iPSC-heps的最佳功能表达。重要的是,移植后,这些水凝胶显著提高了急性肝衰竭小鼠的存活率和肝功能,促进了肝脏再生和修复。这些发现表明,微流控3D打印水凝胶是肝移植和功能恢复的有前景的候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e69b/11669779/cc04b6f0e311/SMMD-3-e20240056-g007.jpg

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